Oral Cleaner Bracket Assembly for Slim, Leak-Resistant Integration
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Solution Overview
Problem
Existing oral cleaners face issues with lower assembly efficiency.
Innovation Solution
The oral cleaning apparatus includes a shell body with a bracket assembly, power assembly, and charging receiver assembly, featuring a connector that integrates flow channels to improve structural strength and stability, and a separator that enhances liquid storage and energy source positioning for a slim design, along with vibration dampers to enhance connection reliability.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If multiple components (power assembly, charging receiver assembly) are assembled on the bracket assembly, then assembly efficiency is improved, but device complexity increases
Solution Approach 1:
The device is divided into modular assemblies (power assembly, charging receiver assembly, bracket assembly) that can be independently manufactured and then quickly assembled together, improving assembly efficiency while managing complexity through standardization
Solution Approach 2:
Multiple components are integrated onto a common bracket assembly, combining multiple functions into a unified structure that simplifies the overall assembly process and improves manufacturing efficiency
2Length of moving object
If the oral cleaner is designed with a slim profile, then user convenience is improved, but structural strength deteriorates
Solution Approach 1:
The connector uses integrated flow channels and composite structural design that provides high structural strength while maintaining a compact, slim overall device profile
Solution Approach 2:
The separator optimizes spatial arrangement of components in three-dimensional space, enabling efficient liquid storage and energy source positioning within a compact volume to achieve slim design without compromising structural integrity
3Reliability
If vibration dampers are added to enhance connection reliability, then reliability is improved, but device complexity increases
Solution Approach 1:
Vibration dampers are pre-installed at critical connection points to prevent vibration-related failures before they occur, enhancing connection reliability through proactive vibration mitigation
Solution Approach 2:
Vibration dampers serve as intermediary elements between connected components, absorbing and dampening vibrations to protect the connection while adding minimal structural complexity
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
This design improves assembly efficiency, reduces liquid leakage risk, and enhances overall structural integrity and user convenience by optimizing the arrangement of components and incorporating vibration dampers.
Implementation Method 1
a vibration damper between the power assembly and the bracket assembly
Data Source
AI summary
The present disclosure discloses an oral cleaning apparatus, device and system, where the oral cleaning apparatus includes a shell body, a bracket assembly, a power assembly, and a charging receiver assembly. The bracket assembly, the power assembly, and the charging receiver assembly are all arranged in an inner cavity of the shell body, and both the power assembly and the charging receiver assembly are assembled on the bracket assembly.


